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Targeting hexokinase 2 inhibition promotes radiosensitization in HPV16 E7-induced cervical cancer and suppresses tumor growth

In order to improve the sensitivity of cervical cancer cells to irradiation therapy, we targeted hexokinase 2 (HK2), the first rate-limiting enzyme of glycolysis, and explore its role in cervical cancer cells. We suppressed HK2 expression and/or function by shRNA and/or metformin and found HK2 inhib...

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Autores principales: Liu, Yuan, Murray-Stewart, Tracy, Casero, Robert A., Kagiampakis, Ioannis, Jin, Lihua, Zhang, Jiawen, Wang, Huihui, Che, Qi, Tong, Huan, Ke, Jieqi, Jiang, Feizhou, Wang, Fangyuan, Wan, Xiaoping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5435328/
https://www.ncbi.nlm.nih.gov/pubmed/28498475
http://dx.doi.org/10.3892/ijo.2017.3979
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author Liu, Yuan
Murray-Stewart, Tracy
Casero, Robert A.
Kagiampakis, Ioannis
Jin, Lihua
Zhang, Jiawen
Wang, Huihui
Che, Qi
Tong, Huan
Ke, Jieqi
Jiang, Feizhou
Wang, Fangyuan
Wan, Xiaoping
author_facet Liu, Yuan
Murray-Stewart, Tracy
Casero, Robert A.
Kagiampakis, Ioannis
Jin, Lihua
Zhang, Jiawen
Wang, Huihui
Che, Qi
Tong, Huan
Ke, Jieqi
Jiang, Feizhou
Wang, Fangyuan
Wan, Xiaoping
author_sort Liu, Yuan
collection PubMed
description In order to improve the sensitivity of cervical cancer cells to irradiation therapy, we targeted hexokinase 2 (HK2), the first rate-limiting enzyme of glycolysis, and explore its role in cervical cancer cells. We suppressed HK2 expression and/or function by shRNA and/or metformin and found HK2 inhibition enhanced cells apoptosis with accelerating expression of cleaved PARP and caspase-3. HK2 inhibition also induced much inferior proliferation of cervical cancer cells both in vitro and in vivo with diminishing expression of mTOR, MIB and MGMT. Moreover, HK2 inhibition altered the metabolic profile of cervical cancer cells to one less dependent on glycolysis with a reinforcement of mitochondrial function and an ablation of lactification ability. Importantly, cervical cancer cells contained HK2 inhibition displayed more sensitivity to irradiation. Further results indicated that HPV16 E7 oncoprotein altered the glucose homeostasis of cervical cancer cells into glycolysis by coordinately promoting HK2 expression and its downregulation of glycolysis. Taken together, our findings supported a mechanism whereby targeting HK2 inhibition contributed to suppress HPV16 E7-induced tumor glycolysis metabolism phenotype, inhibiting tumor growth, and induced apoptosis, blocking the cancer cell energy sources and ultimately enhanced the sensitivity of HPV(+) cervical cancer cells to irradiation therapy.
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spelling pubmed-54353282017-05-19 Targeting hexokinase 2 inhibition promotes radiosensitization in HPV16 E7-induced cervical cancer and suppresses tumor growth Liu, Yuan Murray-Stewart, Tracy Casero, Robert A. Kagiampakis, Ioannis Jin, Lihua Zhang, Jiawen Wang, Huihui Che, Qi Tong, Huan Ke, Jieqi Jiang, Feizhou Wang, Fangyuan Wan, Xiaoping Int J Oncol Articles In order to improve the sensitivity of cervical cancer cells to irradiation therapy, we targeted hexokinase 2 (HK2), the first rate-limiting enzyme of glycolysis, and explore its role in cervical cancer cells. We suppressed HK2 expression and/or function by shRNA and/or metformin and found HK2 inhibition enhanced cells apoptosis with accelerating expression of cleaved PARP and caspase-3. HK2 inhibition also induced much inferior proliferation of cervical cancer cells both in vitro and in vivo with diminishing expression of mTOR, MIB and MGMT. Moreover, HK2 inhibition altered the metabolic profile of cervical cancer cells to one less dependent on glycolysis with a reinforcement of mitochondrial function and an ablation of lactification ability. Importantly, cervical cancer cells contained HK2 inhibition displayed more sensitivity to irradiation. Further results indicated that HPV16 E7 oncoprotein altered the glucose homeostasis of cervical cancer cells into glycolysis by coordinately promoting HK2 expression and its downregulation of glycolysis. Taken together, our findings supported a mechanism whereby targeting HK2 inhibition contributed to suppress HPV16 E7-induced tumor glycolysis metabolism phenotype, inhibiting tumor growth, and induced apoptosis, blocking the cancer cell energy sources and ultimately enhanced the sensitivity of HPV(+) cervical cancer cells to irradiation therapy. D.A. Spandidos 2017-05-02 /pmc/articles/PMC5435328/ /pubmed/28498475 http://dx.doi.org/10.3892/ijo.2017.3979 Text en Copyright: © Liu et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Liu, Yuan
Murray-Stewart, Tracy
Casero, Robert A.
Kagiampakis, Ioannis
Jin, Lihua
Zhang, Jiawen
Wang, Huihui
Che, Qi
Tong, Huan
Ke, Jieqi
Jiang, Feizhou
Wang, Fangyuan
Wan, Xiaoping
Targeting hexokinase 2 inhibition promotes radiosensitization in HPV16 E7-induced cervical cancer and suppresses tumor growth
title Targeting hexokinase 2 inhibition promotes radiosensitization in HPV16 E7-induced cervical cancer and suppresses tumor growth
title_full Targeting hexokinase 2 inhibition promotes radiosensitization in HPV16 E7-induced cervical cancer and suppresses tumor growth
title_fullStr Targeting hexokinase 2 inhibition promotes radiosensitization in HPV16 E7-induced cervical cancer and suppresses tumor growth
title_full_unstemmed Targeting hexokinase 2 inhibition promotes radiosensitization in HPV16 E7-induced cervical cancer and suppresses tumor growth
title_short Targeting hexokinase 2 inhibition promotes radiosensitization in HPV16 E7-induced cervical cancer and suppresses tumor growth
title_sort targeting hexokinase 2 inhibition promotes radiosensitization in hpv16 e7-induced cervical cancer and suppresses tumor growth
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5435328/
https://www.ncbi.nlm.nih.gov/pubmed/28498475
http://dx.doi.org/10.3892/ijo.2017.3979
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